首页> 外文会议>Applied Optical Metrology II >Experimental investigation of natural convection in a rectangular cavity with two protruded half cylinders using a Mach-Zehnder Interferometer.
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Experimental investigation of natural convection in a rectangular cavity with two protruded half cylinders using a Mach-Zehnder Interferometer.

机译:使用Mach-Zehnder干涉仪对带有两个伸出的半圆柱体的矩形腔中自然对流进行的实验研究。

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摘要

Natural convection studies in an enclosure are very relevant since it spans a wide area of applications such as heat exchangers, chemical reactors, cooling of electronic equipment, etc. In the present study, an experimental investigation is performed in a rectangular cavity of dimension 46 mm × 23 mm with protruded copper half cylinders of diameter 15.8 mm (5/8 inch) each. Interferometry has always been a good technique for accurate measurements of temperature gradients. Mach-Zehnder interferometer is employed for visualising the isotherms and for quantitatively inferring the temperature gradient. The protruded half cylinders are maintained at constant temperature, ranging from 60°C to 120°C using an electric cartridge heater and associated temperature controller setup. A He-Ne laser with 24mm collimated beam size is used for experimental purposes. Temperature gradient variation along the radial direction is plotted against the circumferential angle of the cylinder and isotherm merging angle is determined for varying time step and varying cylinder surface temperature.
机译:封闭空间中的自然对流研究非常重要,因为它涵盖了广泛的应用领域,例如热交换器,化学反应器,电子设备的冷却等。在本研究中,对尺寸为46 mm的矩形腔体进行了实验研究×23毫米,每个直径为15.8毫米(5/8英寸)的伸出的铜半圆柱体。干涉测量一直是精确测量温度梯度的好技术。 Mach-Zehnder干涉仪用于可视化等温线并定量推断温度梯度。使用电热筒加热器和相关的温度控制器设置,将伸出的半圆柱体保持在60°C至120°C的恒定温度下。具有24mm准直光束尺寸的He-Ne激光器用于实验目的。沿径向方向的温度梯度变化相对于圆柱体的圆周角作图,并针对变化的时间步长和变化的圆柱体表面温度确定等温线合并角。

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